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Achieving secure chaotic communication using EKF-based embedded-keys system

机译:使用基于EKF的嵌入式密钥系统实现安全的混沌通信

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In this paper, we describe methods that simultaneously transmit keys and messages in a three-port secure chaotic communications network. These messages are decoded using a matrix representation of linear multivariable systems. Our approach consists of an optimal extended Kalman filter (EKF)-based observer, which is a linearization with time. We consider the observer with messages and the input with keys to be the transmitting agents. The optimal linearization technique is utilized to obtain the exact linear models of a chaotic system for operating states of interest. An EKF algorithm is used to estimate the parameters and states in which the message is already embedded. By combining the EKF with our optimal linear model, the message can be recovered on the receiver end. We provide numerical examples and simulations to demonstrate the effectiveness of our proposed methodology.
机译:在本文中,我们描述了在三端口安全混沌通信网络中同时传输密钥和消息的方法。这些消息使用线性多变量系统的矩阵表示进行解码。我们的方法包括基于最佳扩展卡尔曼滤波器(EKF)的观察者,该观察者随时间线性化。我们认为带有消息的观察者和带有键的输入是传输代理。利用最佳线性化技术来获得针对感兴趣的工作状态的混沌系统的精确线性模型。 EKF算法用于估计已嵌入消息的参数和状态。通过将EKF与我们的最佳线性模型相结合,可以在接收器端恢复消息。我们提供了数值示例和仿真,以证明我们提出的方法的有效性。

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